XC6SLX150-2FGG676C FPGA Chip – Logic Functionality in FGG676 Package

  • The XC6SLX150-2FGG676C is designed for high-performance digital signal processing.
  • It features advanced logic resources, enhancing design flexibility and efficiency.
  • This model offers a compact footprint, saving valuable board space for complex designs.
  • Ideal for communication systems, it supports real-time data processing and analysis.
  • Quality assurance measures ensure reliable operation in various environmental conditions.
SKU: XC6SLX150-2FGG676C FPGA Chip - Logic Functionality in FGG676 Package Category: Brand:
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XC6SLX150-2FGG676C Overview

The XC6SLX150-2FGG676C is a highly integrated, low-power FPGA solution designed to optimize performance in various industrial applications. With its advanced architecture, it delivers significant flexibility and scalability, making it suitable for a range of projects. This device offers a balance of performance and power efficiency, ideal for engineers seeking reliable solutions. Learn more at IC Manufacturer.

XC6SLX150-2FGG676C Key Features

  • Low Power Consumption: The device is engineered for low power usage, enhancing battery life and reducing heat generation in embedded systems.
  • High Logic Density: With a large number of logic cells, this FPGA can handle complex designs while maintaining compact size and efficiency.
  • Flexible I/O Options: The XC6SLX150-2FGG676C supports numerous I/O configurations, allowing seamless integration into varied applications, enhancing design versatility.
  • Fast Configuration: Quick programming times ensure that developers can iterate designs rapidly, improving time-to-market for new products.

XC6SLX150-2FGG676C Technical Specifications

Attribute Value
Logic Cells 150,000
Maximum I/O Pins 676
Package Type FGG676
Supply Voltage 1.2V
Maximum Operating Frequency 500 MHz
Memory Type DDR3, DDR2
Configuration Method JTAG
Temperature Range -40??C to +100??C

XC6SLX150-2FGG676C Advantages vs Typical Alternatives

This FPGA stands out due to its combination of high logic density and low power consumption, making it more efficient than typical alternatives. Its adaptability for complex applications and quick configuration times further enhance its appeal to engineers and designers.

Typical Applications

  • Industrial Automation: The XC6SLX150-2FGG676C is ideal for controlling machinery and processes, providing the necessary logic and I/O capabilities for automation tasks.
  • Telecommunications: It supports high-speed data processing in communication systems, ensuring reliable signal integrity and performance.
  • Medical Devices: This FPGA is suitable for medical imaging and diagnostics, where precision and reliability are critical.
  • Automotive Systems: Its robust design makes it perfect for applications in automotive electronics, including safety and navigation systems.

XC6SLX150-2FGG676C Brand Info

The XC6SLX150-2FGG676C belongs to a family of advanced FPGAs recognized for their performance and efficiency. As a product of cutting-edge technology, it reflects the brand’s commitment to innovation and quality in electronic design solutions.

FAQ

What is the primary use of the XC6SLX150-2FGG676C?

This FPGA is primarily used in applications requiring high logic density and low power consumption, such as industrial automation, telecommunications, and medical devices.

Can the XC6SLX150-2FGG676C be used in automotive applications?

Yes, this FPGA is suitable for automotive systems, providing reliability and performance necessary for critical applications like safety and navigation.

What is the programming method for the XC6SLX150-2FGG676C?

The device can be configured using the JTAG programming method, allowing for efficient and straightforward programming during development.

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What is the temperature range of the XC6SLX150-2FGG676C?

The operating temperature range for this FPGA is from -40??C to +100??C, making it suitable for a variety of industrial environments.

How does the XC6SLX150-2FGG676C compare to similar FPGAs?

This FPGA offers greater logic density and lower power consumption compared to many alternatives, making it an attractive choice for engineers looking for efficiency and performance.

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